4.6 Article

TGF-β/NF1/Smad4-mediated suppression of ANT2 contributes to oxidative stress in cellular senescence

Journal

CELLULAR SIGNALLING
Volume 26, Issue 12, Pages 2903-2911

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.cellsig.2014.08.029

Keywords

Smad; Nuclear factor 1; Senescence; Adenine nucleotide translocase-2; Transforming growth factor-beta; Oxidative stress

Categories

Funding

  1. Slovak Grant Agency VEGA [2/0107/11]
  2. Grant Agency of the Czech Republic [13-17658S, 13-17555S]
  3. Swedish Science Council
  4. Academy of Sciences of the Czech Republic [L200521301]
  5. [RVO 68378050]

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Oxidative stress and persistent activation of DNA damage response (DDR) are causally involved in the development of cellular senescence, a phenomenon implicated in fundamental (patho)physiological processes such as aging, fetal development and tumorigenesis. Here, we report that adenine nucleotide translocase-2 (ANT2) is consistently down-regulated in all three major forms of cellular senescence: replicative, oncogene-induced and drug-induced, in both normal and cancerous human cells. We previously reported formation of novel NF1/Smad transcription repressor complexes in growth-arrested fibroblasts. Here we show that such complexes form in senescent cells. Mechanistically, binding of the NF1/Smad complexes to the NF1-dependent repressor elements in the ANT2 gene promoter repressed ANT2 expression. Etoposide-induced formation of these complexes and repression of ANT2 were relatively late events co-incident with production and secretion of, and dependent on, TGF-beta. siRNA-mediated knock-down of ANT2 in proliferating cells resulted in increased levels of reactive oxygen species (ROS) and activation of the DDR. Knock-down of ANT2, together with etoposide treatment, further intensified ROS production and DNA damage signaling, leading to enhanced apoptosis. Together, our data show that TGF-beta-mediated suppression of ANT2 through NF1/Smad4 complexes contributes to oxidative stress and DNA damage during induction of cellular senescence. (C) 2014 Elsevier Inc. All rights reserved.

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